IP Library › Granted Patent US 10,371,582
Granted Patent B2
US 10,371,582 · App. 15/861,819 · Granted Aug 6, 2019

Signal generation circuit and temperature sensor

Inventors: Shigeki Obayashi (Tokyo, JP); Hiroki Shimano (Tokyo, JP); Masataka Minami (Tokyo, JP); Hiroji Ozaki (Tokyo, JP)
Assignee: Renesas Electronics Corporation
G01K7/01
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Quick Facts
Patent No.
US 10,371,582
App. No.
15/861,819
Granted
Aug 6, 2019
Kind
B2
Abstract

To provide a signal generation circuit having a short settling time of an output voltage. In a PTAT signal generation circuit, a trimming circuit is coupled between the cathodes of 0-th to K-th diodes and a line of a ground voltage, the anode of the 0-th diode is coupled to a first node, the anodes of the first to the K-th diodes are coupled to a second node via a resistive element, the first node and the second node are set to the same voltage, a first current flowing through the 0-th diode and a second current flowing through the first to the K-th diodes are set to have the same value, and a third current flowing through the trimming circuit is set to have the value 2 times that of each of the first current and the second current.

Claims (21)

1. A signal generation circuit comprising:

a first diode whose anode is coupled to a first node;

a first resistive element whose one-side terminal is coupled to a second node;

a second diode whose anode is coupled to other-side terminal of the first resistive element, whose cathode is coupled to a cathode of the first diode, and which has a current drive capability larger than the first diode;

a current source that causes the first and second nodes to have a same voltage and feeds a current of a same value through the first and second diodes;

an output circuit that is coupled between the cathodes of the first and second diodes and a line of a ground voltage and which outputs, on the basis of a current of a sum of the currents flowing through the first and second diodes, a voltage proportional to an absolute temperature,

an amplifier circuit that amplifies an output voltage of the output circuit; and

a variable conductance circuit that is coupled between the output terminal of the amplifier circuit and a line of a reference voltage and causes a current to flow from an output terminal of the signal generation circuit to the line of the reference voltage.

2. The signal generation circuit according to claim 1 , wherein

the amplifier circuit further comprises a source follower amplifier including a first transistor whose source and back gate serve as an output terminal of the amplifier circuit, and

the variable conductance circuit comprises a diode whose anode is coupled to the output terminal of the amplifier circuit and whose cathode is coupled to the drain of the first transistor.

3. The signal generation circuit according to claim 1 , wherein

a conductance of the variable conductance circuit increases in a period during which a voltage of the output terminal of the amplifier circuit is higher than a voltage to be settled.

4. The signal generation circuit according to claim 2 , wherein

the first transistor is an N-type transistor.

5. The signal generation circuit according to claim 1 ,

wherein a ratio between the voltage proportional to the absolute temperature and the current of a sum of the currents flowing through the first and second diodes is adjustable.

6. The signal generation circuit according to claim 5 ,

wherein the output circuit includes:

a plurality of second resistor elements coupled in series between the cathodes of the first and second diodes and the line of the ground voltage; and

a switch circuit that couples a selected terminal, among terminals on a side of the cathodes of the first and second diodes of the second resistor elements, to an output terminal for outputting a voltage proportional to the absolute temperature.

Priority Claims (1)
JP 2013-181430 · Sep 2, 2013 · national
Continuity (2)
Continuation 14459356 · Aug 14, 2014
Related Publication 20180128689A1 · May 10, 2018
Cited By (1)
US 12,468,325